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[調(diào)劑信息]
阜陽(yáng)師范大學(xué)喬瑞教授課題組調(diào)劑招生信息
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| 學(xué)校: | 阜陽(yáng)師范 |
| 專(zhuān)業(yè): | 理學(xué)->化學(xué) |
| 年級(jí): | 2025 |
| 招生人數(shù): | 2 |
| 招生狀態(tài): | 正在招生中 |
| 聯(lián)系方式: | ********* (為保護(hù)個(gè)人隱私,聯(lián)系方式僅限APP查看) |
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喬瑞教授課題組主要從事有機(jī)化學(xué)方向的研究,現(xiàn)因科研工作需要,面向全國(guó)誠(chéng)招調(diào)劑生。 招收對(duì)象:報(bào)考化學(xué)專(zhuān)業(yè)過(guò)A區(qū)線(xiàn)考生 招收人數(shù):2人 研究方向:竹紅菌素類(lèi)光敏劑的結(jié)構(gòu)修飾以及其在光動(dòng)力治療中的應(yīng)用;離子探針的設(shè)計(jì)與合成;有機(jī)熒光材料;有機(jī)合成。 課題組招生優(yōu)勢(shì): 1. 優(yōu)良的實(shí)驗(yàn)室環(huán)境。本課題組實(shí)驗(yàn)室空間和科研經(jīng)費(fèi)充足,實(shí)驗(yàn)儀器設(shè)備完善,具備高效開(kāi)展科研實(shí)驗(yàn)的條件。 2. 良好的科研氛圍。喬瑞教授科研知識(shí)儲(chǔ)備豐厚,待人親近和善,在科研工作中能夠給予很大的指導(dǎo)幫助。 3. 課題組在光敏劑和離子探針研究領(lǐng)域取得了一系列重要成果,為學(xué)生提供了良好的科研平臺(tái)。 4. 課題組師兄師姐待人友好,實(shí)驗(yàn)室相處融洽,老師會(huì)定期組織學(xué)生參與組內(nèi)活動(dòng)。 5. 學(xué)校獎(jiǎng)助體系完善。具體信息可以登錄阜陽(yáng)師范大學(xué)官網(wǎng)查詢(xún)2020年研究生招生專(zhuān)題。 6. 畢業(yè)生都能有很好的去向:張杰 福建師范大學(xué)博士生,導(dǎo)師:黃維院士;覃于鑫 華僑大學(xué)博士生;姚俊雄 內(nèi)蒙古大學(xué)博士生;孟倩 華東師范大學(xué)博士生。 歡迎有意向的同學(xué)將個(gè)人簡(jiǎn)歷、本科成績(jī)單及其他相關(guān)材料發(fā)送至郵箱qiaorui@fynu.edu.cn。郵件主題請(qǐng)注明“調(diào)劑申請(qǐng)-姓名-本科院!。 喬瑞老師簡(jiǎn)介:?jiǎn)倘,理學(xué)博士,教授 電子郵箱:qiaorui@fynu.edu.cn 學(xué)習(xí)工作經(jīng)歷: 2002.07 安徽師范大學(xué) 化學(xué)學(xué)士學(xué)位 2007.07 中國(guó)科學(xué)院理化技術(shù)研究所 有機(jī)化學(xué)博士學(xué)位 2010.11 副教授 2017.11 教授 主要研究方向: 竹紅菌素類(lèi)光敏劑的結(jié)構(gòu)修飾以及其在光動(dòng)力治療中的應(yīng)用;離子探針的設(shè)計(jì)與合成;有機(jī)熒光材料;有機(jī)合成。 成果簡(jiǎn)介: 一、主持各類(lèi)科研項(xiàng)目 DNA靶向功能的痂囊腔菌素A類(lèi)光敏劑的設(shè)計(jì)合成與光動(dòng)力性質(zhì)研究,國(guó)家自然科學(xué)基金青年科學(xué)項(xiàng)目,1302019 安徽省高等學(xué)校自然科學(xué)研究重大項(xiàng)目,KJ2019ZD38 光致變色技術(shù)在食品安全中的應(yīng)用,阜陽(yáng)市政府-阜陽(yáng)師范學(xué)院橫向合作重點(diǎn)項(xiàng)目 安徽高校優(yōu)秀青年人才支持計(jì)劃重點(diǎn)項(xiàng)目,gxyqZD2017068 痂囊腔菌素A衍生物的合成及其光動(dòng)力性質(zhì)研究,中國(guó)科學(xué)院“光化學(xué)轉(zhuǎn)換與功能材料”重點(diǎn)實(shí)驗(yàn)室開(kāi)放課題 安徽省高校省級(jí)優(yōu)秀青年人才項(xiàng)目,2011SQRL101 安徽省高校省級(jí)自然科學(xué)研究項(xiàng)目,2011KJ2011B123 二.各類(lèi)獲獎(jiǎng) 安徽省科學(xué)技術(shù)三等獎(jiǎng)(2015年,第三完成人) 三.代表性著作與論文 2025年 [28] Dong, Y.-J.; Qiao R.*; Song, Q.-X.; Chen, M.-Y.; Wang, S.-Z.; Hu, J.-D.; Wang, X.; Xue, W.-H.; Zhang, Y.-Q.; Bai, C.-B.; Qu, C.-Q.; Miao, H. Two birds with one stone: A near-infrared AIE ffuorescent probe for highly selective recognition of Cu2+/GSH and bioimaging. Journal of Photochemistry & Photobiology, A: Chemistry 2025, 462, 116263. (IF= 4.1) 2024年 [27] Bai, C.-B.; Meng, Q.; Song, Q.-X.; Wang, S.-Z.; Chen, M.-Y.; Liu, X.-Y.; Wei, B.; Qiao R.*; Zhang, L.; Qu, C.-Q.; Miao, H. A novel colorimetric/ffuorometric dual-channel probe for selective detection of Sn2+ with long-wavelength emission and its bioimaging applications. Sensors & Actuators: B. Chemical 2024, 417, 136135. (IF= 8.0) [26] Song, Q.-X.; Bai, C.-B.; Dong, Y.-J.; Chen, M.-Y.; Wang, S.-Z.; Hu, J.-D; Qiao X.; Chen, Y.; Li, S.-Y.; Liu, X.-Y.; Wang, X.-Y.; Qiao R.*; Qu, C.-Q.; Miao, H. Highly selective Zn2+ near-infrared ffuorescent probe and its application in biological imaging. Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy 2024, 322, 124828. (IF= 4.3) [25] Yao, J.-X.; Meng, Q.; Xu, Q.-X.; Dong, Y.-J.; Fu, h.-M.; Xu, N.; Feng, Q.; Cao.X.-H.; Zhou, Y.; Huang, H.-N.; Bai, C.-B.; Qiao R.* A novel BN aromatic module modiffed near-infrared ffuorescent probe for monitoring carbon monoxide-releasing molecule CORM-3 in living cells and animals. Talanta 2024, 280, 126734. (IF= 5.6) [24] Bai, C.-B.; Yao, J.-X.; Meng, Q.; Dong, Y.-J.; Chen, M.-Y.; Liu, X.-Y;; Wang, X.-Y.; Qiao R.*; Huang, H.-N.; Wei, B.; Qu, C.-Q.; Miao, H. A near-infrared fluorescent ratiometric probe with large Stokes shift for multi-mode sensing of Pb2+ and bioimaging. Journal of Hazardous Materials 2024, 469, 133968. (IF= 13.6) 2023年 [24] Yao, J.-X.; Meng, Q.; Xu, H.; Xu, C.-L.; Cao, X.-H.; Huang, H.-N.; Bai, C.-B.; Qiao R.* Precise design and synthesis of an AIE-active glutathione fluorescent probe and its exogenous biological imaging. Dyes and Pigments 2023, 218, 111481. (IF= 4.5) [23] Meng, Q.; Yao, J.-X.; Chen, M.-Y.; Dong, Y.-Y.; Liu, X.-Y.; Zhao, S.-Y.; Qiao R.*; Bai, C.-B.; Qu, C.-Q.; Miao, H. Using Cu2+ to regulate the emission feature of near-infrared fluorescent sensor with AIE: To detect ascorbic acid in food samples and its application in bioimaging. Analytica Chimica Acta 2023, 1276, 341602. (IF= 6.2) [22] Meng, Q.; Bai, C.-B.; Yao, J.-X.; Wang, X.-Y.; He, S.-P.; Liu, X.-Y.; Wang, S.; Xue, W.-H.; Zhang, L.; Wei, B.; Miao, H.; Qu, C.-Q.; Qiao R.* Dual-mode "turn-on" fluorescence and colorimetric probe toward cyanide based on ESIPT and its bioimaging applications. Journal of Luminescence 2023, 263, 120031. (IF= 3.6) 2022年 [21] Qin, Y.-X.; Meng, Q.; Yao, J.-X.; Chen, M.-Y.; Dong, Y.-Y.; Chen, D.-S.; He, S.-P.; Bai, C.-B.; Zhang, L.; Wei, B.; Miao, H.; Qu, C.-Q.; Qiao R.* The Novel Fluorescent Probe Toward Yttrium(III) and its Bioimaging. Journal of Fluorescence 2022, 33, 731. (IF= 2.7) [20] Bai, C.-B.; Zhang, J.; Qin, Y.-X.; Meng, Q.; Yao, J.-X.; Huang, H.-N.; Wei, B.; Li, R.-Q.; Zhang, L.; Miao, H.; Qu, C.-Q.; Qiao R.* Strategy for Detecting Carbon Monoxide: Cu2+-Assisted Fluorescent Probe and Its Applications in Biological Imaging. Analytical Chemistry 2022, 94, 11298. (IF= 7.4) [19] Bai, C.-B.; Zhang, J.; Qin, Y.-X.; Huang, H.-N.; Xia, Z.-N.; Zheng, Q.-J.; Dai, H.-L.; Lu, P.-K.; Miao, H.; Qu, C.-Q.; Qiao R.* Precise probe design based ESIPT coupled AIE mechanism toward endogenous cyanide in food detection and bioimaging. Chemical Engineering Journal 2022, 443, 136445. (IF= 15.1) [18] Bai, C.-B.; Zhang, J.; Ma, W.; Yao, J.-X.; Meng, Q.; Xia, Z.-N.; Chen, D.-S.; He, S.-P.; Zhang, L.; Qu, C.-Q.; Qiao R.*; Yang, Z.; Huang, W. 2022, A new intramolecular proton transfer (ESIPT)-based fluorescent probe for selective visualization of cyanide ion. VIEW, 2022, 4, 20220068. (IF=8.6) 2021年 [17] Zhang, J.; Bai, C.-B.; Chen, M.-Y.; Yue, S.-Y.; Qin, Y.-X.; Liu, X.-Y.; Xu, M.-Y.; Zheng, Q.-J.; Zhang, L.; Li, R.-Q.; Qiao, R.; Qu, C.-Q. Novel Fluorescent Probe toward Fe3+ Based on Rhodamine 6G Derivatives and Its Bioimaging in Adult Mice, Caenorhabditis elegans, and Plant Tissues. ACS Omega 2021, 6, 8616-8624. (IF=4.1) [16] Bai, C.-B.; Zhang, J.; Yue, S.-Y.; Qin, Y.-X.; Chen, M.-Y.; Zhang, L.; Miao, H.; Wang, C.; Qiao, R.; Qu, C.-Q. Easily available aggregation-induced enhanced emission fluorescent material for detecting 1, 3-diaminopropane in gas-liquid-solid three-phase and bioimaging application. Journal of Luminescence 2021, 237, 118182. (IF= 3.6) 2020年 [15] Bai, C.-B.; Zhang, J.; Qiao, R.; Zhang, Q.-Y.; Mei, M.-Y.; Chen, M.-Y.; Wei, B.; Wang, C.; Qu, C.-Q. Reversible and Selective Turn-on Fluorescent and Naked-Eye Colorimetric Sensor to Detect Cyanide in Tap Water, Food Samples, and Living Systems. Industrial & Engineering Chemistry Research 2020, 59, 8125-8135. (IF=4.2) [14] Bai, C.-B.; Zhang, J.; Qiao, R.*; Mu, S.-Y.; Meng, M.; Wei, B.; Wang, C.; Qu, C.-Q.; Ji, Y.-T. Thiadiazole-based turn-on fluorescent chemosensor for AcO− and its application in environmental systems and in bioimaging. SN Applied Sciences 2020, 2, 567. (IF=3.8) [13] Bai, C. B.; Wang, W. G.; Zhang, J.; Wang, C.; Qiao, R.*; Wei, B.; Zhang, L.; Chen, S. S.; Yang, S. A Fluorescent and Colorimetric Chemosensor for Hg2+ Based on Rhodamine 6G With a Two-Step Reaction Mechanism. Frontiers in Chemistry 2020, 8, 7. (IF=5.5) [12] Bai, C. B.; Liu, X. Y.; Zhang, J.; Qiao, R.*; Dang, K.; Wang, C.; Wei, B.; Zhang, L.; Chen, S. S. Using Smartphone APP To Determine the CN- Concentration Quantitatively in Tap Water: Synthesis of the Naked-Eye Colorimetric Chemosensor for CN- and Ni2+ Based on Benzothiazole. Acs Omega 2020, 5, 2488. (IF=4.1) 2019年 [11] Bai, C.-B.; Xu, P.; Zhang, J.; Qiao, R.*; Chen, M.-Y.; Mei, M.-Y.; Wei, B.; Wang, C.; Zhang, L.; Chen, S.-S. Long-Wavelength Fluorescent Chemosensors for Hg2+ based on Pyrene. ACS Omega 2019, 4, 14621-14625. [10] Bai, C.-B.; Fan, H.-Y.; Qiao, R.*; Wang, S.-N.; Wei, B.; Meng, Q.; Wang, Z.-Q.; Liao, J.-X.; Zhang, J.; Zhang, L.; Chen, S.-S.; Miao, H. Synthesis of methionine methyl ester-modified coumarin as the fluorescent-colorimetric chemosensor for selective detection Cu2+ with application in molecular logic gate. Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy 2019, 216, 45-51. [9] Qiao, R.; Fan, H. Y.; Bai, C. B.; Dai, L.; Zhang, L.; Zhang, J.; Chen, S. S.; Miao, H. Using Heterocycle to Improve the Selectivity of Rhodamine-6G Dye: Synthesis of Pyrrole-Modified Rhodamine-6G and its Recognition to Zn2+. J. Chem. Soc. Pak. 2019, 41, 300-307. 2018年 [8] Qiao, R.; Xiong, W.-Z.; Bai, C.-B.; Liao, J.-X.; Zhang, L. A highly selective fluorescent chemosensor for Fe [III] based on rhodamine 6G dyes derivative. Supramolecular Chemistry 2018, 30, 911-917. [7] Bai, C.-B.; Qiao, R.*; Liao, J.-X.; Xiong, W.-Z.; Zhang, J.; Chen, S.-S.; Yang, S. A highly selective and reversible fluorescence “OFF-ON-OFF” chemosensor for Hg2+ based on rhodamine-6G dyes derivative and its application as a molecular logic gate. Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy 2018, 202, 252-259. [6] Qiao, R.; Xiong, W.-Z.; Bai, C.-B.; Zhang, L.; Zhu, M.-M.; Chen, S.-S.; Miao, H. A highly selective fluorescent probe for Zn2+ based on a rhodamine-6G dye derivative modified by a furan unit. Journal of Chemical Research 2018, 42, 194-197. [5] Bai, C. B.; Wang, S. N.; Qiao, R.*; Fan, H. Y.; Wei, B.; Xu, P.; Zhang, L.; Zhang, J.; Li, R. Q.; Chen, S. S.; Yang, S. A Fluorescent Sensor For Zn2+ Based on Rhodamine Thiophene Framework. Int. J. Electrochem. Sci. 2018, 13, 10368-10381. 2017年之前 [4] Qiao, R.; Zhang, Z.-Y.; Zhu, M.-A. Synthesis, Crystal Structure and Water Vapor Adsorption Properties of a Porous Supramolecular Architecture. Crystals 2017, 7. [3] Qiao, R.; Chen, S.-S.; Sheng, L.-Q.; Yang, S.; Li, W.-D. Syntheses, crystal structures, and properties of four complexes based on polycarboxylate and imidazole ligands. Journal of Solid State Chemistry 2015, 228, 199-207. [2] Qiao, R.; Zhou, L.; Zhou, J.; Wei, S.; Shen, J.; Zhang, B.; Wang, X. The synthesis and characterization of ethylenediamine-modified Elsinochrome A. Dyes and Pigments 2012, 94, 99-102. [1] Qiao, R.; Zeng, Z.-H.; Xia, S.-Q.; Zhou, J.-H.; Liu, Y.-Y.; Chen, J.-R.; Wang, X.-S.; Zhang, B.-W. Using electrostatic interactions to increase the photodamaging ability of hypocrellin B: synthesis and study of 2-(dimethylamino) ethanethiol-modified HB. New Journal of Chemistry 2007, 31, 196-198. 授權(quán)發(fā)明專(zhuān)利: 1. 喬瑞,白翠冰,王維剛,張杰,汪晨,魏標(biāo),苗慧,王暢,陳水生,楊松,2021,一種香豆素衍生物在檢測(cè)銅離子中的應(yīng)用,CN201910404631,中國(guó),未轉(zhuǎn)讓。 獲獎(jiǎng)情況: 具有特定功能導(dǎo)向新材料的構(gòu)筑和性能研究,安徽省科學(xué)技術(shù)三等獎(jiǎng),安徽省人民政府,2015年,陳水生、盛良全、喬瑞、劉昭第、宋崇富 各類(lèi)項(xiàng)目: 1. 基于聚集誘導(dǎo)發(fā)光效應(yīng)胺類(lèi)分子傳感平臺(tái)的構(gòu)建和應(yīng)用研究,安徽省科研編制計(jì)劃科學(xué)研究重點(diǎn)項(xiàng)目,2022年,2022AH052822, 10萬(wàn)元。 2. 小分子近紅外熒光探針的構(gòu)建及生物應(yīng)用,中國(guó)科學(xué)院光化學(xué)轉(zhuǎn)換與功能材料重點(diǎn)實(shí)驗(yàn)室開(kāi)放課題,2020年,PCOM202002, 2萬(wàn)元。 |
新蟲(chóng) (初入文壇)
新蟲(chóng) (小有名氣)
新蟲(chóng) (小有名氣)
新蟲(chóng) (初入文壇)
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同學(xué),你好。非常感謝你對(duì)我們課題組感興趣,我們也對(duì)你挺滿(mǎn)意的,你可以把郵件發(fā)到指定郵箱,我們進(jìn)一步了解。 發(fā)自小木蟲(chóng)手機(jī)客戶(hù)端 |
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